Three moles of an ideal gas undergo a reversible isothermal compression at 17.0°C. During this compression, 1500 J of work is done on the gas. For related problem-solving tips and strategies, you may want to view a Video Tutor Solution of Entropy change in a free expansion. Part A What is the change of entropy of the gas? 15| ΑΣΦ AS = -5.1724 Submit Previous Answers Request Answer ? J/K X Incorrect; Try Again; 8 attempts remaining The correct answer involves the variable To, which was not part of your answer.

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Can you please answer the follwing question, I did the right work but it seems that is not the right answer.

Three moles of an ideal gas undergo a reversible
isothermal compression at 17.0°C. During this
compression, 1500 J of work is done on the gas.
For related problem-solving tips and strategies, you
may want to view a Video Tutor Solution of
Entropy change in a free expansion.
Part A
What is the change of entropy of the gas?
—| ΑΣΦ
AS 5.1724
Submit
Previous Answers Request Answer
?
J/K
X Incorrect; Try Again; 8 attempts remaining
The correct answer involves the variable To, which was not part of your answer.
Transcribed Image Text:Three moles of an ideal gas undergo a reversible isothermal compression at 17.0°C. During this compression, 1500 J of work is done on the gas. For related problem-solving tips and strategies, you may want to view a Video Tutor Solution of Entropy change in a free expansion. Part A What is the change of entropy of the gas? —| ΑΣΦ AS 5.1724 Submit Previous Answers Request Answer ? J/K X Incorrect; Try Again; 8 attempts remaining The correct answer involves the variable To, which was not part of your answer.
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Solution:-Given thatIdeal gasnumber of moles (n)=3isothermal compression at 17°C or (17+273)=290 KWork (W)=1500 J

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